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Old air samples hint at effects of climate change

Researchers at Lund University analyzed old air samples collected by the Swedish Armed Forces and found that spore dispersal of northern mosses has shifted four weeks earlier over the past 35 years. Warmer autumns enable mosses to release their spores earlier in spring, with climate conditions from the previous year being the key factor.

SourceLund University·JournalJournal of Ecology·DateNov 26, 2025

How a bacterium becomes a permanent resident in a fungus

A team of researchers led by Julia Vorholt at ETH Zurich initiated laboratory partnerships between bacteria and fungi to study the beginnings of an endosymbiotic relationship. They found that when certain bacteria are passed on to the next generation of fungi through spores, the fungus adapts and becomes more inhabited.

SourceETH Zurich·JournalNature·DateOct 2, 2024

Keeping mold out of future space stations

A new study suggests a novel way to prevent mold growth on future space stations by understanding the exposures that happen in the space environment. Repeated elevated humidity exposures can lead to rapid microbial growth and composition changes in dust, making it easier for microbes to thrive.

SourceOhio State University·JournalMicrobiome·DateSep 11, 2024

Fungal infection: A protein weakens the immune system

A study by researchers from Brazil and Germany found that a surface protein on Aspergillus fumigatus spores suppresses the release of pro-inflammatory substances by immune cells, making it easier for the fungus to infect the body. The enzyme glycosylasparaginase plays a crucial role in this process.

Biopesticide is harmless to mammals but can wipe out colonies of wasps that benefit plants

A fungus-based biopesticide is less lethal to mammals than synthetic insecticides but can wipe out colonies of wasps that benefit plants by feeding on pests and performing pollination. The study found that infected wasps are not detected by nestmates, potentially threatening the survival of these species.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalEnvironmental Science and Pollution Research·DateDec 8, 2023

Unlocking long-term genetic memory: Dormant bacterial spores offer key insights into evolutionary survival strategies

Researchers discover a central chromosomal domain that enables dormant spores to revive and activate essential genes, shedding light on bacterial survival in harsh conditions. The study's findings have broader implications for sustaining long-term transcriptional programs across diverse organisms.

SourceThe Hebrew University of Jerusalem·JournalMolecular Cell·TypeExperimental study·DateNov 27, 2023

Chlorine disinfectant is no more effective than water at killing off hospital superbug

A new study by the University of Plymouth reveals that chlorine disinfectants used in hospitals are no more effective at killing off hospital superbugs than water. The research highlights the need for alternative strategies to tackle Clostridioides difficile, which causes diarrhoea, colitis and other bowel complications globally.

SourceUniversity of Plymouth·JournalMicrobiology·TypeExperimental study·DateNov 21, 2023

How dormant bacteria come back to life

Researchers at Harvard Medical School discovered a new cellular sensor that allows dormant bacteria to detect nutrients and quickly spring back to life. This breakthrough could inform the design of ways to prevent dangerous bacterial spores from lying dormant for months before waking up again and causing outbreaks.

SourceHarvard Medical School·JournalScience·TypeExperimental study·DateApr 27, 2023

Fungal spores hijack lung cells

Researchers have discovered that fungal spores can exploit the human protein p11 to hijack lung cells and prevent them from destroying the fungus. This finding offers a promising new target for treatment against Aspergillus fumigatus infections, which affect over 300,000 people worldwide each year.

Wheat’s ancient roots of viral resistance uncovered

Researchers have uncovered the ancient roots of a gene in wheat that provides resistance to the devastating Wheat Yellow Mosaic Virus, which causes significant economic losses. The discovery could lead to more resistant wheat cultivars, increased crop yields, and reduced use of harmful fungicides.

SourceUniversity of Melbourne·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 6, 2023

UCalgary study offers new insight into deadly fungal invasion of the lungs

Researchers discovered that viral infections like SARS-CoV-2 and influenza destroy a natural immunity needed to resist fungal infections. This leads to impaired cooperation between white blood cells, allowing fungi to take root. The study reveals potential repurposing of current therapies to replace damaged antibodies.

SourceUniversity of Calgary·JournalScience Translational Medicine·TypeExperimental study·DateJan 12, 2023

How selfish genes succeed

A study published in PLoS Genetics reveals the mechanism by which a selfish gene in yeast, wtf4, enables its function using a poison-antidote strategy. This strategy involves the production of poison protein that can kill spores, but is countered by an antidote protein produced only by those spores that inherit the drive allele.

SourceStowers Institute for Medical Research·JournalPLOS Genetics·TypeExperimental study·DateDec 8, 2022

Understanding the cryptic role fungi play in ecosystems

Researchers analyzed over 4,500 documents to understand fungal dispersal across spatial scales. They identified four scales of movement, from microscopic to landscape, and found that climate change affects where fungi reside. More data is needed to understand the biodiversity of fungi and their movement in ecosystems.

SourceDartmouth College·JournalAnnual Review of Ecology Evolution and Systematics·TypeLiterature review·DateDec 5, 2022

NUS scientists engineer probiotic to prevent infection of large intestine

Researchers from NUS Medicine developed a probiotic that detects antibiotic-induced microbiome imbalance and regulates bile salt metabolism to prevent Clostridioides difficile infection. The probiotic significantly reduced CDI in laboratory models, demonstrating a 100% survival rate and improved clinical outcomes.

SourceNational University of Singapore, Yong Loo Lin School of Medicine·JournalNature Communications·TypeExperimental study·DateAug 3, 2022

A closer look into the emergence of antibiotic resistance in bioaerosols and its monitoring

Researchers explore the emergence of antibiotic resistance genes in bioaerosols, including sources and detection strategies. The study highlights the need for monitoring and understanding the relationship between human, animal, and environmental microbiomes to counter the spread of AR.

SourceNational Korea Maritime and Ocean University·JournalReviews in Environmental Science and Bio/Technology·TypeLiterature review·DateJun 30, 2022

How do water mould spores swim?

Researchers have developed a theoretical model explaining how water mould spores move and change direction, revealing a breaststroke-like motion for turning. The study provides insights into the biophysical nature of these microorganisms, which could lead to new avenues in physics research.

SourceCNRS·JournaleLife·TypeObservational study·DateMay 9, 2022

Japanese squirrels can consume 'poisonous' mushrooms

A Japanese squirrel's feeding behavior on poisonous Amanita species has been observed, suggesting a potential mutualistic relationship. The study found that the spores of these fungi may survive being eaten and excreted by squirrels, facilitating their dispersal.

SourceKobe University·JournalFrontiers in Ecology and the Environment·TypeObservational study·DateFeb 2, 2022

Unveiling the secrets of biofilms at lightsource BESSY II

Researchers studied Bacillus subtilis biofilms using X-ray diffraction and fluorescence, finding that calcium ions accumulate in the matrix while zinc, manganese, and iron ions accumulate along wrinkles. These findings suggest a link between structure, nutrients, water, and bacterial behavior.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJan 31, 2022

Humidity changes in dead fern fronds drives unique timing of spore dispersal in a widespread fern species

Researchers discovered that humidity-driven movement in spore-bearing leaves is the key mechanism behind the unique timing of spore dispersal in the sensitive fern. The study found that dead fronds open when dry and close when wet due to differential cell expansion, a process also observed in pine cones.

Ultrashort-pulse lasers kill bacterial superbugs, spores

Researchers have found that ultrashort-pulse lasers can inactivate antibiotic-resistant bacteria and bacterial spores, reducing their numbers by over 1,000 times. The technology has the potential to be used to sterilize wounds and disinfect blood products, and may also be used to treat bloodstream infections.

SourceWashU Medicine·JournalJournal of Biophotonics·TypeExperimental study·DateNov 23, 2021

Using environmental modifications, fungicides, and resistant varieties to fight basil downy mildew

To combat basil downy mildew, researchers recommend using resistant basil varieties, as well as environmental modifications like keeping leaves dry and dehumidifying the air. Fungicides are also effective in controlling the disease, but their use must be alternated to prevent resistance development.

SourceAmerican Phytopathological Society·JournalPlant Health Progress·TypeExperimental study·DateNov 4, 2021

Cultivating Matsutake, valuable edible fungi

Researchers at Shinshu University successfully cultivated matsutake mushrooms by germinating spores and inducing mycelia in the soil of Japanese red pine roots. This breakthrough could lead to an artificial cultivation technique for these valuable edible fungi, addressing declining natural habitats.

SourceShinshu University·JournalMycorrhiza·DateApr 14, 2021